Depew Michael J, Bertocchini Federica
Center for Anatomy, Institute for Cell and Neurobiology, Charité Universitätsmedizin Berlin, Berlin, Germany.
Instituto de Biomedicina y Biotecnología de Cantabria, Universidad de Cantabria-CSIC-SODERCAN, Santander, Spain.
Methods Mol Biol. 2019;1976:207-221. doi: 10.1007/978-1-4939-9412-0_16.
One of the early, profound insights regarding the biology of the neural crest was the observation of its contribution to the skeletal structures of the cranium and jaws. The critical nature of these structures made the comparative analysis of the cranial neural crest and its derived structures essential investigative aims toward our understanding of the development and evolution of vertebrates and vertebrate-specific structures. Though classically applied to a relatively wide range of taxa in the nineteenth and early twentieth centuries, the application of traditional methodologies for complex comparative developmental and anatomical analyses subsequently become more limited by their time-consuming nature, resource scarcity, and a greater emphasis on the genetic and molecular regulation of patterning and morphogenesis in a select number of tractable model organisms. Recently, however, this trend has been reversed, and the value of genetic and molecular-based questions applied to non-model (unconventional) vertebrate organisms has been re-appreciated. This is particularly true of comparative investigations of cranial neural crest biology. Herein, we present methodologies for the analysis of the cranial neural crest and its structural derivatives employable in modern investigations of both model and unconventional vertebrate organisms.
关于神经嵴生物学的早期深刻见解之一是观察到它对头骨和颌骨骨骼结构的贡献。这些结构的关键性质使得对颅神经嵴及其衍生结构进行比较分析成为我们理解脊椎动物及其特定结构的发育和进化的重要研究目标。尽管在19世纪和20世纪早期传统方法被广泛应用于相对广泛的分类群,但随后用于复杂的比较发育和解剖分析的传统方法,因其耗时、资源稀缺以及更侧重于少数易于处理的模式生物中的模式形成和形态发生的遗传和分子调控,其应用变得更加有限。然而,最近这种趋势发生了逆转,应用于非模式(非常规)脊椎动物的基于遗传和分子的问题的价值得到了重新认识。颅神经嵴生物学的比较研究尤其如此。在此,我们介绍可用于现代模式和非常规脊椎动物研究的颅神经嵴及其结构衍生物的分析方法。